Hydrophobic substrate binding pocket remodeling of echinocandin B deacylase based on multi-dimensional rational design

Heng Tang, Han-yue Zhu, Yin-feng Huang, Ze-yu Wu,Shu-ping Zou,Zhi-qiang Liu,Yu-guo Zheng

International Journal of Biological Macromolecules(2024)

引用 0|浏览1
暂无评分
摘要
Actinoplanes utahensis deacylase (AAC)-catalyzed deacylation of echinocandin B (ECB) is a promising method for the synthesis of anidulafungin, the newest of the echinocandin antifungal agents. However, the low activity of AAC significantly limits its practical application. In this work, we have devised a multi-dimensional rational design strategy for AAC, conducting separate analyses on the substrate-binding pocket's volume, curvature, and length. Furthermore, we quantitatively analyzed substrate properties, particularly on hydrophilic and hydrophobic. Accordingly, we tailored the linoleic acid-binding pocket of AAC to accommodate the extended long lipid chain of ECB. By fine-tuning the key residues, the resulting AAC mutants can accommodate the ECB lipid chain with a lower curvature binding pocket. The D53A/I55F/G57M/F154L/Q661L mutant (MT) displayed 331 % higher catalytic efficiency than the wild-type (WT) enzyme. The MT product conversion was 94.6 %, reaching the highest reported level. Utilizing a multi-dimensional rational design for a customized mutation strategy of the substrate-binding pocket is an effective approach to enhance the catalytic efficiency of enzymes in handling complicated substrates.
更多
查看译文
关键词
Binding pocket,Multi-dimensional rational design,Deacylase,Molecular dynamics simulation,Substrate scope,Hydrophobicity analysis,Binding energy
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要